# Evidence for a Massive Protocluster in S255N

**Authors:** C.J. Cyganowski, C.L. Brogan, T.R. Hunter

arXiv: 0704.0988 · 2009-06-23

## TL;DR

This study presents multi-wavelength observations of S255N, revealing a massive protocluster with multiple dense cores, early evolutionary stages, and signs of ongoing high-mass star formation, including a hot core and outflows.

## Contribution

The paper provides the first detailed multi-wavelength analysis confirming S255N as a forming massive star cluster with multiple cores and early evolutionary indicators.

## Key findings

- Resolved three compact dust cores with masses 6-35 Msun
- Identified a hot core with complex molecular emission
- Detected outflow activity associated with SMA1

## Abstract

S255N is a luminous far-infrared source that contains many indications of active star formation but lacks a prominent near-infrared stellar cluster. We present mid-infrared through radio observations aimed at exploring the evolutionary state of this region. Our observations include 1.3mm continuum and spectral line data from the Submillimeter Array, VLA 3.6cm continuum and 1.3cm water maser data, and multicolor IRAC images from the Spitzer Space Telescope. The cometary morphology of the previously-known UCHII region G192.584-0.041 is clearly revealed in our sensitive, multi-configuration 3.6cm images. The 1.3mm continuum emission has been resolved into three compact cores, all of which are dominated by dust emission and have radii < 7000AU. The mass estimates for these cores range from 6 to 35 Msun. The centroid of the brightest dust core (SMA1) is offset by 1.1'' (2800 AU) from the peak of the cometary UCHII region and exhibits the strongest HC3N, CN, and DCN line emission in the region. SMA1 also exhibits compact CH3OH, SiO, and H2CO emission and likely contains a young hot core. We find spatial and kinematic evidence that SMA1 may contain further multiplicity, with one of the components coincident with a newly-detected H2O maser. There are no mid-infrared point source counterparts to any of the dust cores, further suggesting an early evolutionary phase for these objects. The dominant mid-infrared emission is a diffuse, broadband component that traces the surface of the cometary UCHII region but is obscured by foreground material on its southern edge. An additional 4.5 micron linear feature emanating to the northeast of SMA1 is aligned with a cluster of methanol masers and likely traces a outflow from a protostar within SMA1. Our observations provide direct evidence that S255N is forming a cluster of intermediate to high-mass stars.

## Full text

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## Figures

12 figures with captions in the complete paper: https://tomesphere.com/paper/0704.0988/full.md

## References

54 references — full list in the complete paper: https://tomesphere.com/paper/0704.0988/full.md

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Source: https://tomesphere.com/paper/0704.0988